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PMID: 11574941 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't

Acute and chronic caffeine administration differentially alters striatal gene expression in wild-type and adenosine A(2A) receptor-deficient mice.

Synapse (New York, N.Y.) ·Vol. 42 ·No. 2 ·2001-11-00 ·Pages 63-76

Dassesse D, Ledent C, Parmentier M, Schiffmann SN

Abstract

In order to assess for the respective involvement of adenosine A(1) and A(2A) receptors (A(2A)-R) in the consequences of short- and long-term caffeine exposure on gene expression, the effects of acute caffeine administration on striatal, cortical, and hippocampal expression of immediate early genes (IEG), zif-268 and arc, and the effects of long-term caffeine or 1,3-dipropyl-8-cyclopentylxanthine (DPCPX) exposure (once daily for 15 days) on striatal gene expression of substance P, enkephalin, and glutamic acid decarboxylase isoforms, GAD65 and GAD67, were evaluated in wild-type and A(2A)-R-deficient (A(2A)-R(-/-)) mice. In situ hybridization histochemistry was performed using oligonucleotides followed by quantitative image analysis. Our results demonstrated that a biphasic response of IEG expression to acute caffeine observed in the wild-type striatum was resumed in a monophasic response in the mutant striatum. In the cerebral cortex and hippocampus, the effect of caffeine was weak in wild-type, whereas in mutant mice it induced a 2-3-fold increase in the IEG expression to restore a level similar to the wild-type basal expression. Chronic caffeine and DPCPX-mediated regulation in neuropeptide and GADs striatal gene expression typically showed the mimicking of alterations resulting from the A(2A)-R genetic deficiency in 25 mg/kg caffeine-treated wild-type mice as well as the dose-dependent normalization of substance P and enkephalin expression in A(2A)-R(-/-) mice. These results indicate that, depending on the dose, the blockade of A(2A)-R or A(1) receptors by caffeine is preferentially revealed leading to highly differential alterations in striatal gene expression and they also suggested the central role of these two receptors on the control of dopaminergic functions.

MeSH Terms
Animals Caffeine/pharmacology Cytoskeletal Proteins/genetics DNA-Binding Proteins/genetics Dose-Response Relationship, Drug Drug Administration Schedule Early Growth Response Protein 1 Enkephalins/genetics Gene Expression Regulation/drug effects,physiology Genes, Immediate-Early/drug effects,physiology Glutamate Decarboxylase/genetics Hippocampus/drug effects,metabolism Immediate-Early Proteins Isoenzymes/genetics Male Mice Mice, Knockout Neostriatum/drug effects,metabolism Nerve Tissue Proteins/genetics Neuropeptides/drug effects,genetics,metabolism Phosphodiesterase Inhibitors/pharmacology Purinergic P1 Receptor Antagonists RNA, Messenger/drug effects,metabolism Receptor, Adenosine A2A Receptors, Purinergic P1/deficiency,genetics,metabolism Somatosensory Cortex/drug effects,metabolism Substance P/genetics Transcription Factors/genetics Xanthines/pharmacology
Chemicals
Cytoskeletal Proteins DNA-Binding Proteins Early Growth Response Protein 1 Egr1 protein, mouse Enkephalins Immediate-Early Proteins Isoenzymes Nerve Tissue Proteins Neuropeptides Phosphodiesterase Inhibitors Purinergic P1 Receptor Antagonists RNA, Messenger Receptor, Adenosine A2A Receptors, Purinergic P1 Transcription Factors Xanthines activity regulated cytoskeletal-associated protein Substance P Caffeine 1,3-dipropyl-8-cyclopentylxanthine Glutamate Decarboxylase glutamate decarboxylase 1 glutamate decarboxylase 2
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Dassesse D
Laboratory of Neurophysiology, Department of Neuroscience, School of Medicine, Université Libre de Bruxelles, B-1070 Brussels, Belgium. [email protected]
Ledent C
Parmentier M
Schiffmann S N
Article Info
Journal
Synapse (New York, N.Y.)
Abbr.
Synapse
ISSN
0887-4476
Published
2001-11-00
Pages
63-76
Language
English
Region
United States
NLM ID
8806914
Subset
IM
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